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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Comparison between microwave and conventional thermal reactivations of spent activated carbon generated from vinyl acetate synthesis
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Comparison between microwave and conventional thermal reactivations of spent activated carbon generated from vinyl acetate synthesis

机译:微波法和常规热法活化乙酸乙烯酯合成废碳的比较

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摘要

Microwave and traditional thermal reactivations of activated carbon (AC) used as catalyst support in vinyl acetate synthesis have been investigated. Experiments have been carried out by using a single mode microwave device (MW) operating at 2450 MHz and a conventional electric furnace (CF) under steam and CO2 atmosphere, respectively. The surface properties of the spent AC and the reactivated samples were characterized by means of N2 adsorption and SEM, and compared the effects of different heating mechanisms and activating agents on the adsorption capacities and pore structures of the reactivated AC, These results indicated that the AC obtained by microwave irradiation showed higher adsorption capacities for iodine, methylene blue (MB) and acetate acid, higher BET surface areas and mesoporosity than those obtained by conventional thermal heating. The reactivated samples activated by steam had a narrower and more extensive microporosity as well as higher BET than those activated by carbon dioxide under the same heating equipment. From the results, it was concluded that microwave heating combined with steam as an activating agent could remarkably increase the reactivating efficiency compared to the traditional thermal heating.
机译:微波和传统热活化的活性炭(AC)在乙酸乙烯酯合成中用作催化剂载体已得到研究。通过使用分别在2450 MHz下运行的单模微波设备(MW)和在蒸汽和CO2气氛下的常规电炉(CF)进行了实验。通过氮气吸附和扫描电镜表征了废旧AC和再活化样品的表面性质,并比较了不同的加热机理和活化剂对再活化AC的吸附能力和孔结构的影响,这些结果表明,AC微波辐射获得的碘,亚甲基蓝(MB)和乙酸的吸附能力比常规热加热更高,BET表面积和介孔率更高。在相同的加热设备下,由蒸汽活化的再活化样品具有比由二氧化碳活化的样品更窄和更广泛的微孔率以及更高的BET。从结果可以得出结论,与传统的热加热相比,微波加热结合蒸汽作为活化剂可以显着提高再活化效率。

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